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Sensitivity and uniformity improvement of phased array MR images using inductive coupling and RF detuning circuits

机译:使用电感耦合和射频静态电路相控阵MR图像的灵敏度和均匀性改进

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Objective To improve sensitivity and uniformity of MR images obtained using a phased array RF coil,an inductively coupled secondary resonator with RF detuning circuits at 300 MHz was designed.Materials and methods A secondary resonator having detuning circuits to turn off the resonator during the transmit mode was constructed.The secondary resonator was located at the opposite side of the four-channel phased array to improve sensitivity and uniformity of the acquired MR images.Numerical simulations along with phantom and in vivo experiments were conducted to evaluate the designed secondary resonator.Results The numerical simulation results of |B_1~+| in a transmit mode showed that magnetic field uniformity would be decreased with a secondary resonator having no detuning circuits because of unwanted interferences between the transmit birdcage coil and the secondary resonator.The standard deviation (SD) of |B_1~+| was decreased 57% with a secondary resonator containing detuning circuits.The sensitivity and uniformity of |B_1~?| in the receive mode using a four-channel phased array were improved with the secondary resonator.Phantom experiments using a uniform saline phantom had 20% improvement of the mean signal intensity and 50% decrease in the SD with the secondary resonator.Mice with excess adipose tissue were imaged to demonstrate the utility of the secondary resonator.Conclusion The designed secondary resonator having detuning circuits improved sensitivity and uniformity of mouse MR images acquired using the four-channel phased array.
机译:目的为了提高相控阵射频线圈磁共振成像的灵敏度和均匀性,设计了一种射频失谐电路频率为300mhz的电感耦合二次谐振器。材料与方法构建了一个二次谐振器,该二次谐振器具有在传输模式期间关闭谐振器的失谐电路。二次谐振器位于四通道相控阵的另一侧,以提高获得的MR图像的灵敏度和均匀性。对设计的二次谐振器进行了数值模拟、体模实验和体内实验。结果|B_1~+|在发射模式下的数值模拟结果表明,由于发射鸟笼线圈和二次谐振器之间存在不必要的干扰,二次谐振器没有失谐电路时,磁场均匀性会降低。在含有失谐电路的二次谐振器中,|B|u 1~+|的标准偏差(SD)降低了57%。|B|u 1~?|的灵敏度和均匀性在接收模式下,使用四通道相控阵和次级谐振器进行了改进。使用均匀生理盐水模型进行的模型实验,平均信号强度提高了20%,使用二次谐振器的SD降低了50%。对脂肪组织过多的小鼠进行成像,以证明次级谐振器的效用。结论设计的具有失谐电路的二次谐振器提高了使用四通道相控阵获得的小鼠MR图像的灵敏度和均匀性。

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